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Simulations of a Novel All-Optical Flip-Flop Based on a Nonlinear DFB Laser Cavity Using GPGPU Computing

机译:使用GPGPU计算基于非线性DFB激光腔的新型全光触发器的仿真

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A new all-optical flip-flop based on a nonlinear Distributed feedback (DFB) structure is proposed. The device does not require a holding beam. A nonlinear part of the grating is detuned from the remaining part of the grating and has negative nonlinear coefficient. Optical gain is provided by an injected electrical current into an active layer. In the OFF state, due to the detuned section, no laser light is generated in the device. An injected optical pulse reduces the detuning of the nonlinear section, and the optical feedback provided by the DFB structure generates a laser light in the structure that sustains the change in the detuned section. The device is switched “OFF” by detuning another section of the grating by a Reset pulse. The Reset pulse reduces the refractive index of that section by the generation of electron-hole pairs. The Reset pulse wavelength is adjusted such that the optical gain provided by the active layer at that wavelength is zero. The Reset pulse is prevented from reaching the nonlinear detuned section by introducing an optical absorber in the laser cavity to attenuate the pulse. The device is simulated in time domain using General Purpose Graphics Processing Unit (GPGPU) computing. Set-Reset operations are in nanosecond time scale.
机译:提出了一种基于非线性分布式反馈(DFB)结构的全光触发器。该设备不需要固定梁。光栅的非线性部分从光栅的其余部分失谐,并且具有负的非线性系数。通过向有源层注入电流来提供光学增益。在断开状态下,由于失谐部分,在设备中不产生激光。注入的光脉冲减少了非线性部分的失谐,并且DFB结构提供的光反馈在维持失谐部分变化的结构中生成了激光。通过复位脉冲使光栅的另一部分失谐,可以将设备“关闭”。复位脉冲通过产生电子-空穴对来降低该部分的折射率。调整重置脉冲波长,以使有源层在该波长处提供的光学增益为零。通过在激光腔中引入光吸收器以衰减脉冲,可以防止复位脉冲到达非线性失谐部分。使用通用图形处理单元(GPGPU)进行时域仿真。设置-重置操作以纳秒为单位。

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